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来自哺乳动物细胞的猪圆环病毒2型病毒样颗粒的稳定性及生物技术应用面临的挑战。

The stability of PCV2 virus-like particles from mammalian cells and challenges for biotechnological applications.

作者信息

Olivero-Deibe Natalia, Frigini Ezequiel N, Ramos Natalia, Carrión Federico, Fadel Florencia, Villarreal Lihuén, Benech Juan C, Arbiza Juan, Pantano Sergio, Ortega Claudia

机构信息

Institut Pasteur de Montevideo, Uruguay.

Instituto Multidisciplinario de Investigaciones Biológicas (IMIBIO-SL), CONICET. Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, Argentina.

出版信息

Vaccine. 2025 Jan 12;44:126549. doi: 10.1016/j.vaccine.2024.126549. Epub 2024 Dec 2.

Abstract

Porcine circovirus type 2 (PCV2) is a highly damaging pathogen for pig farming, causing significant economic losses. Despite the availability of vaccines based on different technologies, the virus steadily infects the world's pig population. In this context, virus-like particles (VLPs) constitute appealing alternatives for vaccine development as they lack the viral genome but present intact external surfaces. Using PCV2 VLPs expressed and purified from Expi293F cells, we demonstrate the potential to generate high-purity VLPs with excellent antigenic properties through biochemical, biophysical, and immunological characterization. Using different techniques, we also determined the melting temperature of these VLPs at nearly 55 °C. Furthermore, we conducted multiscale simulations of whole VLPs combined with multiple sequence analyses to provide a new perspective into the stability determinants. Computational results support our findings and underscore the importance of protein-nucleic acid interactions in stabilizing the VLP structure. Moreover, we spotted an unforeseen correlation between amino acid conservation, solvent exposure, and flexibility, revealing a link to viral assembly and immune evasion. These novel insights are crucial to guide the development of stabilized VLP for new vaccine prototypes to respond to the emergence of new PCV2 genotypes.

摘要

猪圆环病毒2型(PCV2)是养猪业中极具破坏性的病原体,会造成重大经济损失。尽管有基于不同技术的疫苗,但该病毒仍持续感染全球猪群。在此背景下,病毒样颗粒(VLP)作为疫苗开发的有吸引力的替代物,因为它们缺乏病毒基因组但具有完整的外表。利用从Expi293F细胞表达和纯化的PCV2 VLP,我们通过生化、生物物理和免疫学表征证明了产生具有优异抗原特性的高纯度VLP的潜力。使用不同技术,我们还确定了这些VLP的解链温度接近55°C。此外,我们结合多序列分析对整个VLP进行了多尺度模拟,以提供关于稳定性决定因素的新视角。计算结果支持了我们的发现,并强调了蛋白质 - 核酸相互作用在稳定VLP结构中的重要性。此外,我们发现了氨基酸保守性、溶剂暴露和柔韧性之间意想不到的相关性,揭示了与病毒组装和免疫逃逸的联系。这些新见解对于指导稳定VLP的开发以用于新疫苗原型以应对新PCV2基因型的出现至关重要。

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